Nitrous Oxide Data Directly from Sensor to Sustainability Report
Nitrous Oxide Data Directly from Sensor to Sustainability Report
In March 2021, Kerteminde Forsyning (WWTP) commissioned a report identifying baselines and hotspots for process emissions. The report used the default emission factor of 0.32% for nitrous oxide emissions, which accounted for 34% of total emissions in 2020.
However, in 2020, the Danish Environmental Protection Agency conducted a Danish measurement campaign. Based on the measurements, a new Danish emission factor was determined to be 0.84%. The change would mean an increase in Kerteminde Forsyning's nitrous oxide emissions of approximately 250,000 kg CO2-eq.
Located on the east coast of Funen, Kerteminde Forsyning operates a wastewater treatment plant that treats wastewater from the municipality and the entire catchment area. The wastewater is treated mechanically, then chemically, and finally biologically, after which it is discharged into Romsøsund.
The utility has set a goal of reaching climate neutrality by 2030, which means that net CO2 emissions for the entire utility must go to zero.
Kerteminde WWTP has a capacity of 25,000 PE and treats approximately 2.5 million m3 of wastewater annually.
Reduction opportunities
At Kerteminde WWTP, two of their own employees developed a method to control the formation of nitrous oxide in their own PLC system through observation and analysis of data. One of their key observations was that the formation of nitrous oxide increased significantly at the end of the aeration period.
To avoid the increase in nitrous oxide formation, they adjusted the ammonium setpoint that controls aeration. By raising the ammonium setpoint, the oxygen setpoint is lowered, resulting in both reduced nitrous oxide formation and lower energy consumption. At the same time, they maintain low nitrogen emissions.
In 2023, Kerteminde WWTP was able to update the treatment plant's emission factor to 0.30%. This time based on actual measurements of nitrous oxide emissions. With this improved data, the treatment plant has now begun further process optimization to meet their ambitious goal of achieving climate neutrality by 2030.
Reliable sustainability accounting
Nitrous oxide emissions can vary significantly depending on the season and facility. To obtain an accurate sustainability account, it is crucial to perform long-term measurements. Here are the factors Kerteminde WWTP considered when using nitrous oxide data from Unisense Environment's sensors in their sustainability accounting:
Conclusion
Kerteminde WWTP has prioritised getting an overview of and a method to reduce nitrous oxide emissions in the biological tanks at the treatment plant. Their efforts bring them closer to their goal of climate neutrality by 2030 and show how precise measurements and data analysis can play a key role in reducing the carbon footprint of wastewater treatment plants.
Authors: Jette Dirksen & Carsten Kock, Kerteminde Forsyning www.kertemindeforsyning.dk, Pernille Højmark Hansen, Unisense Environment
Literature
IPCC - Intergovernmental Panel on Climate Change, “2019 Refinement to the 2006 IPCC Guidelines for National Greenhouse Gas Inventories”, 2019.
1 Miljøstyrelsen, 2020, "MUDP Lattergas pulje - Data opsamling på måling og reduktion af lattergasemissioner fra renseanlæg", https://www2.mst.dk/Udgiv/publikationer/2020/12/978-87-7038-254-0.pdf
Climate Goals
Tech Notes & References
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The available data show that the nitrous oxide emission varies in time and between wastewater treatment plants.
Information regarding N2O emissions from trickling filters is limited, partly caused by the difficulties in capturing off-gases.
Significant 3-fold increase in IPCC2019 wastewater N2O emission factor supported by Danish studies.